National Institute of Materials Physics, Magurele-Ilfov Romania.
PLoS One. 2019 Aug 15;14(8):e0221108. doi: 10.1371/journal.pone.0221108. eCollection 2019.
A carbon-based layer was deposited by spraying on top of a ferroelectric layer grown by sol-gel on Si (001) substrate and its properties as electrode and absorber for pyroelectric detection were tested. It was found that the electric properties of the ferroelectric capacitor with top carbon-based sprayed electrode (CBSE) are comparable with those of the capacitors with standard top SrRuO3 (SRO)/Au electrode. Pyroelectric measurements show that the pyroelectric signal recorded on ferroelectric capacitors with top CBSE electrode is 2.5 times greater than for top SRO/Au electrode for low frequency range. The value of the pyroelectric coefficient was estimated to 9.73·10-4 C/m2K for CBSE electrodes and 3.36·10-4 C/m2K for SRO/Au respectively. The fabrication process of CBSE is of low cost, easy to implement and with high throughput making it attractive for manufacturing various devices like pyroelectric detector, thermal imaging, solar cells, etc.
通过喷涂在 Si(001)衬底上的溶胶-凝胶生长的铁电层上沉积了一层碳基层,并测试了其作为电极和吸收体用于热释电检测的性能。结果发现,具有顶部碳基喷涂电极(CBSE)的铁电电容器的电性能可与具有标准顶部 SrRuO3(SRO)/Au 电极的电容器相媲美。热释电测量表明,对于低频范围,具有顶部 CBSE 电极的铁电电容器记录的热释电信号比具有顶部 SRO/Au 电极的信号大 2.5 倍。对于 CBSE 电极,热释电系数估计值为 9.73·10-4 C/m2K,对于 SRO/Au 电极,热释电系数估计值为 3.36·10-4 C/m2K。CBSE 的制造工艺成本低,易于实现,具有高吞吐量,因此非常适合制造各种设备,如热释电探测器、热成像、太阳能电池等。